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Bored Piles With Base Preloading By Grouting - The Polish ExperienceBy Bolestaw A. Ktosihski
Preloading of bored pile bases by grouting is an effective way of reducing foundation costs. The bearing performance of a pile may be considerably improved. Various techniques and devices are used. Pr
Jan 1, 2006
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Long Term Behavior Of Piles - Presented At An ASCE-Penn DOT Seminar Innovations In Geotechnical Engineering - Harrisburg, PA, April 1985By Donald J. Murphy
Longevity of structural units, as compared to the planned useful life of a facility, always is a design consideration. Typical concerns include slow decay due to environmental factors, and changes in
Jan 1, 1986
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Design Strategy For Deep Slurry Stabilized Bored Piles In CompressionBy Chu E. Ho
Field load tests on deep slurry stabilized bored piles have shown that end bearing resistance was unreliable due to soft toe conditions caused by debris accumulation at the bottom of the hole during p
Jan 1, 2002
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Settlement Of Tall Buildings Supported On Deep Foundations In Southeast Florida, USABy Rudolph P. Frizzi
This paper presents different deep foundation systems and associated settlement records for high-rise building projects in the coastal areas of southeastern Florida. An introduction to the sedimentary
Jan 1, 2003
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"Underpinning By Jet Grouting" - SummaryBy George K. Burke
Underpinning of a structure has been traditionally expensive, time consuming, and, in many cases, caused as much settlement to the existing structure as it was trying to prevent. As underpinning is no
Jan 1, 1991
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Deep Excavation Retaining Systems In Unsaturated SoilsBy Tariq B. Hamid
Deep excavation is commonly associated with construction of different deep below-grade structural elements (e.g., basement walls and slabs, tunnels, retaining walls, tanks, utilities, etc.) Deep Excav
Jan 1, 2006
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Analysis Of The Settlement Of A Single Axially Loaded Soil-Cement PileBy Jiwei Duan
The deformation and load transfer behavior of a single soil-cement column are studied with the finite element method. The results show that there is an effective length for a soil-cement column. Beyon
Jan 1, 2002
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Centrifuge Modeling of Temperature Effects on the Pullout Capacity of Energy Piles in ClayBy John S. McCartney, Ismaail Ghaaowd
This study presents the results from centrifuge modeling experiments performed to understand the effects of temperature changes on the pullout capacity of scale-model energy piles embedded in normally
Jan 1, 2018
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Inaccurate Interpretation Of Offshore Geotechnical Site Investigation Results And Risk Associated - A Case Study Of Conductors Collapse In DrivingBy Hodjat] [Shiri
A 4-legged jacket structure was installed by an Offshore Installation Contractor (OIC) in the Persian Gulf. In addition to four open-end pipe piles, six conductors were installed by OIC. During the in
Jan 1, 2006
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Underwater Concrete - Mix Design And Construction PracticesBy Sam X. Yao
The underwater concrete technology has historically evolved largely through a trial-and-error process of constructing marine works. Many outstanding examples exist of high quality concrete placed unde
Jan 1, 2013
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Deep and Extra Deep Diaphragm Walls in Shanghai – Increasing Demand for Infrastructure in Megacities Drives the Requirement of Increasing Depth for Diaphragm WallsBy Wu Jie Mei, Li Yao Liang, Franz-Werner Gerressen, Arthur Bi
Diaphragm walls (D-walls) are known as underground structural elements commonly used for retention systems and permanent foundation elements. In addition, they are also quite often used as deep ground
Jan 1, 2018
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Data Normalization and User Interface Design for the Nevada Department of Transportation Deep Foundation Load Test DatabaseBy Austin Metz, Kevin Stanton, Ramin Motamed
"A recent study calibrated Load and Resistance Factor Design (LRFD) resistance factors for local soil conditions in the Las Vegas Valley. As a part of this calibration, an extensive database of drille
Jan 1, 2017
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Secant Pile Shoring - Developments In Design And ConstructionBy Eric S. Lindquist
High groundwater levels combined with variable soil and rock profiles present challenges to the design and construction of deep excavation support systems. Increasingly, secant piling techniques are t
Jan 1, 2011
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Presentation #6 - Rapid Load Testing: A New Choice For Pile TestingBy Michael D. Justason
...a global perspective... In March of 2000, the Japanese Geotechnical Society added "Rapid Load Testing" to their national standard for pile testing. In the year 2000. it is estimated that th
Jan 1, 2001
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Trends In Deep Foundations In Europe ? SynopsisBy R. Stenne
This paper presents the trends in deep foundations in Europe, both in terms of design and construction. Eurocode 7 which is a design code for geotechnical engineering will be introduced in the Eur
Jan 1, 2000
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Driven Piles In Glacial Deposits Exhibiting Time Dependent CapacityBy Upendra L. Karna
The pile capacity gain with time evaluated and implemented for the construction of the Route 21 Viaduct in Newark, NJ, U.S.A is discussed in this paper. The project consisted of the replacement of mor
Jan 1, 2006
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Uplift Capacity Of Drilled Piers In Clay - SynopsisBy Braja M. Das
Laboratory model test results for the ultimate uplift capacity of square and circular foundations in saturated clay (ø=0) have been presented. The results of the present model tests for square foundat
Jan 1, 1987
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Foundations In The Urban Environment The Need For Unique Installation Methods - IntroductionBy James J. Cahill
Contractor's working in an urban environment face a multitude of working conditions. There is no typical "Downtown" job site. From afar we just see the skyline, or up close a specific building. T
Jan 1, 1991
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Dynamically Cast-In-Place PilesBy John J. Vieaux
Allowable loads on Dynamically-Cast-In-Place Piles (the Franki type) can be correlated with N values from the Standard Penetration Test. Using a constant developed by Nordlund, a conservative value fo
Jan 1, 1984
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Axial Pile Analyses For The New East Span Of The San Francisco-Oakland Bay BridgeBy Jacob Chacko
The east span of the San Francisco-Oakland Bay Bridge (SFOBB), which is one of the most heavily traveled bridges in the world, will be replaced due to seismic safety concerns. The majority of the new
Jan 1, 2002